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首页> 外文期刊>Arabian Journal for Science and Engineering >Geometrical and Mechanical Aspects of Periodic Thermal Boundaries on Electrically Conducting Viscoplastic Fluid in a Vertical Channel with Rotating Characteristics
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Geometrical and Mechanical Aspects of Periodic Thermal Boundaries on Electrically Conducting Viscoplastic Fluid in a Vertical Channel with Rotating Characteristics

机译:具有旋转特性的垂直通道中导电粘塑性流体的周期性热边界的几何和机械方面

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摘要

Oscillatory pressure-driven MHD flow in a vertical rotating channel has been explored in the present article. Emphasis has been given to velocity slip effects along with Hall current and periodic thermal boundaries. Casson fluid model has been incorporated to examine viscoplastic effects. Heat transfer analysis has been performed in the presence of thermal radiation. The current problem has been modeled in a rotating frame. Equations are formulated in the Cartesian coordinate system and simplified by means of suitable non-dimensional variables. Furthermore, closed- form exact solutions are derived for velocity and temperature fields. The effects of pertinent parameters are studied through graphs.
机译:本文探讨了在垂直旋转通道中由振荡压力驱动的MHD流动。重点是速度滑移效应以及霍尔电流和周期性热边界。引入了Casson流体模型以检查粘塑性作用。在存在热辐射的情况下进行了热传递分析。当前问题已在旋转框架中建模。方程在笛卡尔坐标系中表示,并通过适当的无量纲变量进行简化。此外,得出了速度和温度场的封闭形式精确解。通过图形研究相关参数的影响。

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